Ordered MoS2 Nanochannels Regulated by CNT for Conformation-Dependent Sieving in High-Salinity Organic Wastewater

Abstract The rapid expansion of the pharmaceutical and fine chemical industries has escalated the discharge of high-salinity organic wastewater, which contains complex solutes and biotoxic antibiotics that are difficult to treat conventionally due to their high osmotic pressure and environmental persistence. Here, we developed a high-performance composite nanofiltration membrane by incorporating hydroxylated single-walled carbon nanotubes (SWCNT-OH) into electrochemically exfoliated monolayer MoS2 nanosheets. SWCNT-OH acts as a structural regulator, preventing MoS2 restacking and constructing stable, highly ordered 1.5 nm interlayer channels. At an optimized mass ratio of 6:1, the membrane achieves a water permeance of 28.0 L·m–2·h–1·bar–1 and a separation factor of 59.8 for oxytetracycline (OTC)/NaCl mixtures. Notably, rejection is governed by the molecular projected cross-sectional dimension relative to the 1.5 nm channels, demonstrating a conformation-dependent selectivity. These results highlight MoS2/CNT membranes as a durable solution for sustainable industrial wastewater treatment.

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Publication Details

Journal
Nano Letters
Published
2026-10-09
DOI
https://doi.org/10.1021/acs.nanolett.6c03976
Primary Topic
Membrane Separation Technologies
Type
article
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article

Ordered MoS2 Nanochannels Regulated by CNT for Conformation-Dependent Sieving in High-Salinity Organic Wastewater

Zhiyuan Zeng, Bolong Huang, Qutong Yang, Ruixin Yan et al.
Nano Letters
Membrane Separation Technologies
article

Ordered MoS2 Nanochannels Regulated by CNT for Conformation-Dependent Sieving in High-Salinity Organic Wastewater

Zhiyuan Zeng, Bolong Huang, Qutong Yang, Ruixin Yan, Honglu Hu, Yang Zhou, Mingzi Sun, Weikang Zheng, Yue Zhang, Zhengqi Liu
article en

Abstract

Abstract The rapid expansion of the pharmaceutical and fine chemical industries has escalated the discharge of high-salinity organic wastewater, which contains complex solutes and biotoxic antibiotics that are difficult to treat conventionally due to their high osmotic pressure and environmental persistence. Here, we developed a high-performance composite nanofiltration membrane by incorporating hydroxylated single-walled carbon nanotubes (SWCNT-OH) into electrochemically exfoliated monolayer MoS2 nanosheets. SWCNT-OH acts as a structural regulator, preventing MoS2 restacking and constructing stable, highly ordered 1.5 nm interlayer channels. At an optimized mass ratio of 6:1, the membrane achieves a water permeance of 28.0 L·m–2·h–1·bar–1 and a separation factor of 59.8 for oxytetracycline (OTC)/NaCl mixtures. Notably, rejection is governed by the molecular projected cross-sectional dimension relative to the 1.5 nm channels, demonstrating a conformation-dependent selectivity. These results highlight MoS2/CNT membranes as a durable solution for sustainable industrial wastewater treatment.

Nano Letters
City University of Hong Kong (HK)
Openalex Percentile: Top 24%
Membrane Separation Technologies
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Ordered MoS2 Nanochannels Regulated by CNT for Conformation-Dependent Sieving in High-Salinity Organic Wastewater — Zhiyuan Zeng, Bolong Huang, et al. · Nano Letters (2026) | TGRS Research Map | TGRS